US8026673B2

Methods and apparatus for simulating resistive loads

Summary by NHIP

Resistive Load Simulation Apparatus

The apparatus couples a converter circuit to a load to alter its current-to-voltage characteristic for predictable series operation. The circuit configures the device with an effective resistance between approximately 0.1(V T /I T ) and 10.0(V T /I T ), or specifically 1.0(V T /I T ) to 4.0(V T /I T ), at the nominal operating point.

Claim Score by NHIP

Read claim 26, the broadest

Abstract

Methods and apparatus for simulating resistive loads, and facilitating series, parallel, and/or series-parallel connections of multiple loads to draw operating power. Current-to-voltage characteristics of loads are altered in a predetermined manner so as to facilitate a predictable and/or desirable behavior of multiple loads drawing power from a power source. Exemplary loads include LED-based light sources and LED-based lighting units. Altered current-to-voltage characteristics may cause a load to appear as a substantially linear or resistive element to the power source, at least over some operating range. In connections of multiple such loads, the voltage across each load is relatively more predictable. In one example, a series connection of multiple loads with altered current-to-voltage characteristics may be operated from a line voltage without requiring a transformer.

US8026673B2, drawing sheet 1
Sheet 1 of 29

Term

3.8 yearsleft in the term

Expires 27 July 2030, including 1,083 days of term adjustment.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

27 claims: 3 independent, 24 dependent

  1. 1
    An apparatus, comprising:at least one load having a first current-to-voltage characteristic;and a converter circuit coupled to the at least one load to alter the first current-to-voltage characteristic in a predetermined manner so as to facilitate a predictable behavior of the at least one load when the at least one load is connected in series with at least one other load to draw power from a power source, wherein a first current conducted by the apparatus when the apparatus draws power from a power source is independent of a second current conducted by the load.
  2. 20
    An apparatus, comprising:at least one light source having an operating voltage V L , an operating current I L , and a first current-to-voltage characteristic based on the operating voltage V L and the operating current I L ;and a converter circuit coupled to the at least one light source to provide the operating voltage V L , the converter circuit configured such that the apparatus conducts a terminal current I T and has a terminal voltage V T when the apparatus draws power from a power source, wherein: the operating voltage V L of the at least one light source is less than the terminal voltage V T of the apparatus;the terminal current I T of the apparatus is independent of the operating current I L or the operating voltage V L of the at least one light source;and the converter circuit alters the first current-to-voltage characteristic in a predetermined manner to provide a second current-to-voltage characteristic for the apparatus, based on the terminal voltage V T and the terminal current I T , that is significantly different from the first current-to-voltage characteristic;and the second current-to-voltage characteristic facilitates a predictable behavior of the at least one light source when the at least one light source is connected in series with at least one other light source to draw power from the power source.
  3. 26
    Broadest claimClaim Score 84, broad(NHIP)A method, comprising:altering a first current-to-voltage characteristic of at least one load in a predetermined manner so as to facilitate a predictable behavior of the at least one load when the at least one load is connected in series with at least one other load to draw power from a power source, wherein a first current conducted from the power source is independent of a second current conducted by the at least one load.